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首页> 外文期刊>World Journal of Mechanics >Performance Optimization of a Six-Strand Tundish
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Performance Optimization of a Six-Strand Tundish

机译:六流中间包的性能优化

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The aims of the present study are to predict and improve inclusion separation capacity of a six strand tundish by employing flow modifiers (dams and weirs) and to assess the influence of inclusion properties (diameter and density) together with velocity of liquid steel at the inlet gate on the inclusion removal efficiency of a six-strand tundish. Computational solutions of the Reynolds-Averaged Navier-Strokes (RANS) equations together with the energy equation are performed to obtain the steady, three-dimensional velocity and temperature fields using the standard k-ε model of turbulence. These flow fields are then used to predict the inclusion sepapration by numerically solving the inclusion transport equation. To account for the effects of turbulence on particle paths a discrete random walk model is employed. It was observed that with the employment of flow modifiers, the inclusion separation capacity of tundish increases without any large variation in the outlet temperatures. It is shown that inclusion properties and velocity are important parameters in defining the operating conditions of a six-strand tundish.
机译:本研究的目的是通过使用流动调节剂(坝和堰)来预测和提高六股中间包的夹杂物分离能力,并评估夹杂物特性(直径和密度)以及进口钢水速度的影响。门对六链中间包夹杂物的去除效率。使用标准的k-ε湍流模型,对雷诺平均Navier-Strokes(RANS)方程和能量方程进行了计算,从而获得了稳定的三维速度和温度场。然后,通过数值求解夹杂物传输方程,将这些流场用于预测夹杂物分离。为了说明湍流对粒子路径的影响,采用了离散随机游走模型。观察到,通过使用流动改性剂,中间包的夹杂物分离能力增加,而出口温度没有任何大的变化。结果表明,夹杂物的性质和速度是确定六链中间包工作条件的重要参数。

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